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Progress and Perspective of Constructing Solid Electrolyte Interphase on Stable Lithium Metal Anode

机译:稳定锂金属阳极构建固体电解质相互作用的进展与透视

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摘要

Lithium metal is considered as one of the most promising anode materials for high-energy-density rechargeable batteries. However, uncontrolled dendrite growth, the unstable interface between lithium metal anode and electrolyte, and infinite volume change are major obstacles in their practical applications. Constructing a solid electrolyte interphase (SEI) with high strength, good stability, and desirable flexibility is one of the most promising approaches to mitigate the volume expansion of lithium anode and induce the uniform deposition of lithium for dendrite-free anode. Herein, we summarize the advances of SEI modification from the aspects of in-situ (adding electrolyte additives) and ex-situ (constructing artificial SEI) methods. The ideal SEI on lithium anode can effectively suppress the lithium dendrite growth and volume change of lithium metal anode. In the future study, the modification of SEI should focus on the suppression of side reactions between active lithium metal and electrolyte and the formation of dead lithium, which is quite significant to reduce the consumption of active lithium anode and electrolyte for safe and long-life high energy lithium metal batteries. Constructing an excellent SEI is a robust strategy to achieve the highly stable lithium metal anode for practical application of lithium metal batteries.
机译:锂金属被认为是高能量密度可充电电池最有前途的阳极材料之一。然而,不受控制的树突生长,锂金属阳极和电解质之间的不稳定界面,以及无限体积变化是其实际应用中的主要障碍。构建具有高强度,良好稳定性和理想灵活性的固体电解质间(SEI)是减轻锂阳极的体积膨胀的最有前途的方法之一,并诱导锂锂的锂用于树枝状阳极的均匀沉积。在此,我们总结了SEI修饰从原位原位(添加电解质添加剂)和前原位(构建人造SEI)方法的进步。锂阳极上的理想SEI可以有效地抑制锂金属阳极的锂枝晶生长和体积变化。在将来的研究中,SEI的修改应着眼于活性锂金属和电解质而形成死锂的,这是相当显著减少活性锂阳极和电解质的消耗为了安全和长寿命之间的副反应的抑制高能量锂金属电池。构建优异的SEI是实现锂金属电池实际应用的高度稳定锂金属阳极的稳健策略。

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